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Design of Kinetic Energy Recovery System for Bicycle

机译:自行车动能回收系统设计

摘要

Kinetic Energy Recovery System, commonly abbreviated KERS, is a system to recover the Kinetic energy of a moving vehicle under braking. This system stores the kinetic energy in the form of potential energy and converts it back to kinetic energy when needed. When riding a bicycle it becomes too tiresome to start the bicycle again after braking. If the bicycle is provided with a kinetic energy recovery system then the rider will have two power sources that he can use at his will. When brakes are applied kinetic energy is wasted because the kinetic energy converts into heat energy due to friction at the contact surface and the heat energy dissipates into the atmosphere due to thermal radiation. Vehicles equipped with KERS devices are able to take some of its kinetic energy out slowing down the vehicle. This is a form of braking in which energy is not wasted, instead gets stored in some device. Using a proper mechanism, this energy that is stored in terms of potential energy can be converted back into kinetic energy to give the vehicle an extra boost of power. In the literature review, different types of available KERS systems are compared and a mechanical based KERS system is found to be the best suitable for a bicycle. Mechanical KERS system there are of two types, one is a clutch based and another is a CVT based K.E. recovery system. In this project, a hybrid of the above two type of KERS systems is designed. Instead of CVT a variable sprocket ratio is used to make the power transmission smoother. Finally, the complete manufacturing process of this KERS system is explained elaborately so that any researcher can follow those steps and design a KERS system for his/her bicycle.
机译:动能回收系统,通常缩写为KERS,是一种在制动状态下回收行驶中的车辆的动能的系统。该系统以势能的形式存储动能,并在需要时将其转换回动能。骑自行车时,太累了,无法在制动后再次启动自行车。如果自行车具有动能回收系统,则骑手将有两个动力源,他可以随意使用。当施加制动器时,动能被浪费了,因为动能由于在接触表面处的摩擦而转化为热能,并且由于热辐射而使热能耗散到大气中。配备了KERS设备的车辆能够吸收部分动能,从而减慢车辆行驶速度。这是一种制动形式,其中能量不会浪费,而是会存储在某些设备中。使用适当的机制,以势能存储的这种能量可以转换回动能,从而为车辆提供额外的动力。在文献综述中,比较了不同类型的可用KERS系统,发现基于机械的KERS系统最适合自行车。机械KERS系统有两种类型,一种是基于离合器的,另一种是基于CVT的K.E.恢复系统。在该项目中,设计了以上两种类型的KERS系统的混合体。代替CVT,使用可变链轮比来使动力传递更平稳。最后,详细说明了该KERS系统的完整制造过程,以便任何研究人员都可以遵循这些步骤并为其自行车设计KERS系统。

著录项

  • 作者

    Nayak Shreemoy Kumar;

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  • 年度 2015
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